Eco-evo-devo of plant stomata: the diversity of stomatal development and its evolution
Author:
Affiliation:
1. Graduate School of Science, The University of Tokyo
Publisher
The Japanese Society of Plant Morphology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/plmorphol/34/1/34_53/_pdf
Reference62 articles.
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2. Chater, C. C., Caine, R. S., Tomek, M., Wallace, S., Kamisugi, Y., Cuming, A. C., Lang, D., MacAlister, C. A., Casson, S., Bergmann, D. C., et al. (2016) Origin and function of stomata in the moss Physcomitrella patens. Nat Plants 2: 16179.
3. Christophel, D. C., Kerrigan, R., and Rowett, A. I. (1996) The use of cuticular features in the taxonomy of the Lauraceae. Ann Missouri Bot Gard 83: 419-432.
4. Danzer, J., Mellott, E., Bui, A. Q., Le, B. H., Martin, P., Hashimoto, M., Perez-Lesher, J., Chen, M., Pelletier, J. M., Somers, D. A., et al. (2015) Down-regulating the expression of 53 soybean transcription factor genes uncovers a role for SPEECHLESS in initiating stomatal cell lineages during embryo development. Plant Physiol 168: 1025-1035.
5. Deschamp, P. A., and Cooke, T. J. (1983) Leaf dimorphism in aquatic angiosperms: significance of turgor pressure and cell expansion. Science 219: 505-507.
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